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Related papers: Hot spin spots in the laser-induced demagnetizatio…

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Ultrafast laser pulses provide unique tools to manipulate magnetization dynamics at femtosecond timescales, where the interaction of the electric field -- such as excitation of spin carriers to non-equilibrium states, generation of…

Femtosecond laser light can transfer spin angular momentum between magnetic subspecies that exhibit hybridized valence bands within an alloy or compound, and represents the fastest route for manipulating the magnetization of a material. To…

The dynamics of ultrafast demagnetisation in 3$d$ magnets is complicated by the presence of both spin ${\v S}$ and orbital ${\v L}$ angular momentum, with the microscopic mechanism by which the magnetic moment is redistributed to the…

Materials Science · Physics 2021-09-01 J. K. Dewhurst , S. Shallcross , P. Elliott , S. Eisebitt , C. v. Korff Schmising , Sangeeta Sharma

The ultimate control of magnetic states of matter at femtosecond (or even faster) timescales defines one of the most pursued paradigm shifts for future information technology. In this context, ultrafast laser pulses developed into extremely…

Mesoscale and Nanoscale Physics · Physics 2022-03-15 Hanan Hamamera , Filipe Souza Mendes Guimarães , Manuel dos Santos Dias , Samir Lounis

Ultrafast photo-induced phase transitions occurring under the impact of femtosecond laser pulses provide versatile opport unities for switching solids between distinctly-different crystalline, electronic, and magnetic states and thus modify…

Understanding the transfer of spin angular momentum is essential in modern magnetism research. A model case is the generation of magnons in magnetic insulators by heating an adjacent metal film. Here, we reveal the initial steps of this…

Using an ultrafast laser pulse to manipulate the spin degree of freedom has broad technological appeal. It allows one to control the spin dynamics on a femtosecond time scale. The discipline, commonly called femtomagnetism, started with the…

Materials Science · Physics 2016-10-17 G. P. Zhang , T. Latta , Z. Babyak , Y. H. Bai , T. F. George

We report about the dephasing of the spins states in a Garnet film excited by femtosecond laser pulses. It is shown that magneto-optical four-wave-mixing signals are efficiently generated and controlled with an external static magnetic…

Mesoscale and Nanoscale Physics · Physics 2013-11-05 M. Barthelemy , M. Vomir , M. Sanches Piaia , H. Vonesch , P. Molho , B. Barbara , J. -Y. Bigot

Synthetic ferrimagnets are composite magnetic structures formed from two or more anti- ferromagnetically coupled magnetic sublattices with different magnetic moments. Here we report on atomistic spin simulations of the laser-induced…

Materials Science · Physics 2014-06-10 Richard F. L. Evans , Thomas A. Ostler , Roy W. Chantrell , Ilie Radu , Theo Rasing

Inspired by a recent pressure experiment in fcc Ni, we propose a simple method to use pressure to investigate the laser-induced femtosecond magnetism. Since the pressure effect on the electronic and magnetic properties can be well…

Materials Science · Physics 2015-12-15 M. S. Si , J. Y. Li , D. S. Xue , G. P. Zhang

Starting from the continuity equation for the magnetization in time-dependent spin-density functional theory, we derive an expression for the effective time-dependent magnetic fields driving the out-of-equilibrium spin dynamics in magnetic…

Mesoscale and Nanoscale Physics · Physics 2017-01-18 Jacopo Simoni , Maria Stamenova , Stefano Sanvito

A theoretical calculation is performed for the ultrafast spin dynamics in nickel using an exact diagonalization method. The present theory mainly focuses on a situation where the intrinsic charge and spin dynamics is probed by the nonlinear…

Materials Science · Physics 2009-10-31 G. P. Zhang , W. Hübner

The injection of spin currents in semiconductors is one of the big challenges of spintronics. Motivated by the ultrafast demagnetisation and spin injection into metals, we propose an alternative femtosecond route based on the laser…

Materials Science · Physics 2016-05-25 M. Battiato , K. Held

Current induced magnetization manipulation is a key issue for spintronic application. Therefore, deterministic switching of the magnetization at the picoseconds timescale with a single electronic pulse represents a major step towards the…

Materials Science · Physics 2017-04-13 Y. Xu , M. Deb , G. Malinowski , M. Hehn , W. Zhao , S. Mangin

The orbital angular momenta (OAM) of electrons play an increasingly important role in ultrafast electron and magnetization dynamics. In this theoretical study, we investigate the electron dynamics induced by femtosecond laser pulses in a…

Materials Science · Physics 2023-10-13 Oliver Busch , Franziska Ziolkowski , Ingrid Mertig , Jürgen Henk

Laser-induced terahertz spin transport (TST) and ultrafast demagnetization (UDM) are central but so far disconnected phenomena in femtomagnetism and terahertz spintronics. Here, we use broadband terahertz emission spectroscopy to reliably…

Mesoscale and Nanoscale Physics · Physics 2021-05-27 R. Rouzegar , L. Brandt , L. Nadvornik , D. A. Reiss , A. L. Chekhov , O. Gueckstock , C. In , M. Wolf , T. S. Seifert , P. W. Brouwer , G. Woltersdorf , T. Kampfrath

By combining interface-sensitive non-linear magneto-optical experiments with femtosecond time resolution and ab-initio time-dependent density functional theory, we show that optically excited spin dynamics at Co/Cu(001) interfaces proceeds…

Materials Science · Physics 2019-02-20 J. Chen , U. Bovensiepen , A. Eschenlohr , T. Müller , P. Elliott , E. K. U. Gross , J. K. Dewhurst , S. Sharma

Laser-induced demagnetization is theoretically studied by explicitly taking into account interactions among electrons, spins and lattice. Assuming that the demagnetization processes take place during the thermalization of the sub-systems,…

Mesoscale and Nanoscale Physics · Physics 2015-06-03 A. Manchon , Q. Li , L. Xu , S. Zhang

Ultrafast spintronics strongly relies on the generation, transport, manipulation and detection of terahertz spin currents (TSCs). In F|HM stacks consisting of a ferromagnetic layer F and a heavy-metal layer HM, ultrafast spin currents are…

At the ultrafast limit of optical spin manipulation is the theoretically predicted phenomena of optical intersite spin transfer (OISTR), in which laser induced charge transfer between the sites of a multi-component material leads to control…